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Valorization of Eucalyptus wood by glycerol-organosolv pretreatment within the biorefinery concept: An integrated and intensified approach

机译:在生物精炼厂概念中通过甘油-有机溶剂预处理对桉木进行增值

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The efficient utilization of lignocellulosic biomass and the reduction of production cost are mandatory to attain a cost-effective lignocellulose-to-ethanol process. The selection of suitable pretreatment that allows an effective fractionation of biomass and the use of pretreated material at high-solid loadings on saccharification and fermentation (SSF) processes are considered promising strategies for that purpose. Eucalyptus globulus wood was fractionated by organosolv process at 200 degrees C for 69 min using 56% of glycerol-water. A 99% of cellulose remained in pretreated biomass and 65% of lignin was solubilized. Precipitated lignin was characterized for chemical composition and thermal behavior, showing similar features to commercial lignin. In order to produce lignocellulosic ethanol at high-gravity, a full factory design was carried to assess the liquid to solid ratio (3-9 g/g) and enzyme to solid ratio (8-16 FPU/g) on SSF of delignified Eucalyptus. High ethanol concentration (94 g/L) corresponding to 77% of conversion at 16FPU/g and LSR = 3 g/g using an industrial and thermotolerant Saccharomyces cerevisiae strain was successfully produced from pretreated biomass. Process integration of a suitable pretreatment, which allows for whole biomass valorization, with intensified saccharification-fermentation stages was shown to be feasible strategy for the co-production of high ethanol titers, oligosaccharides and lignin paving the way for cost-effective Eucalyptus biorefinery. (C) 2016 Elsevier Ltd. All rights reserved.
机译:木质纤维素生物质的有效利用和生产成本的降低对于实现具有成本效益的木质纤维素制乙醇工艺至关重要。选择合适的预处理方法以实现生物质的有效分级,并在糖化和发酵(SSF)工艺中以高固体含量使用预处理的材料被认为是实现该目的的有前途的策略。用有机溶剂工艺在56℃下使用56%的甘油水在200摄氏度下对桉木进行分馏69分钟。预处理过的生物质中残留有99%的纤维素,65%的木质素被溶解。沉淀的木质素的化学成分和热行为进行了表征,显示出与商业木质素相似的特征。为了在高重力下生产木质纤维素乙醇,进行了完整的工厂设计,以评估脱木质素桉树的SSF上的液固比(3-9 g / g)和酶固比(8-16 FPU / g)。 。成功地从预处理过的生物质中生产出了高乙醇浓度(94 g / L),对应于使用16FPU / g和LSR = 3 g / g的工业酿酒酵母菌株的转化率为77%。合适的预处理的工艺整合可以实现整个生物量的增值,并具有强化的糖化发酵阶段,是联合生产高乙醇滴度,低聚糖和木质素的可行策略,为经济高效的桉树生物精炼铺平了道路。 (C)2016 Elsevier Ltd.保留所有权利。

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